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Thermodynamic Modeling and Optimization of a Screw Compressor Chiller and Cooling Tower System

机译:螺杆压缩机冷却器和冷却塔系统的热力学建模和优化

摘要

This thesis presents a thermodynamic model for a screw chiller and cooling tower system for the purpose of developing an optimized control algorithm for the chiller plant. The thermodynamic chiller model is drawn from the thermodynamic models developed by Gordon and Ng (1996). However, the entropy production in the compressor is empirically related to the pressure difference measured across the compressor. The thermodynamic cooling tower model is the Baker & Shryock cooling tower model that is presented in ASHRAE Handbook - HVAC Systems and Equipment (1992). The models are coupled to form a chiller plant model which can be used to determine the optimal performance. Two correlations are then required to optimize the system: a wet-bulb/setpoint correlation and a fan speed/pump speed correlation. Using these correlations, a "quasi-optimal" operation can be achieved which will save 17% of the energy consumed by the chiller plant.
机译:本文提出了一种螺杆式冷水机组和冷却塔系统的热力学模型,旨在为冷水机组开发优化的控制算法。热力学冷却器模型是根据Gordon和Ng(1996)开发的热力学模型得出的。但是,压缩机中的熵产生在经验上与整个压缩机上测得的压差有关。热力学冷却塔模型是在ASHRAE手册-HVAC系统和设备(1992)中介绍的Baker&Shryock冷却塔模型。这些模型被耦合以形成可用于确定最佳性能的冷水机组模型。然后需要两个相关性来优化系统:湿球/设定点相关性和风扇速度/泵速度相关性。使用这些相关性,可以实现“准最佳”运行,这将节省制冷设备所消耗的能源的17%。

著录项

  • 作者

    Graves Rhett David;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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